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Rate distortion regions of Heegard-Berger problems with successive refinement and scalable coding

机译:连续改进和可扩展编码的Heegard-Berger问题的速率失真区域

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In this work, we study two instances of the Heegard-Berger problem. In both settings, an encoder observes a pair of memoryless, arbitrarily correlated, sources (S1n, S2n) and communicates with two receivers over an error-free rate-limited link of capacity R. Both receivers reproduce the source component S2n losslessly; and Receiver 1 also reproduces the source component S1n lossily, to within some prescribed fidelity level D1. Also, Receiver 1 and Receiver 2 are equipped respectively with memoryless side information sequences Y1n and Y2n. The side information sequences are arbitrarily correlated among them, and with the source pair (S1n, S2n). In addition, in the first setting, which is of successive refinement type, the encoder is also connected to Receiver 1 through an additional error-free rate-limited link of capacity R1. In the second setting, which is of reconstruction-scalable coding type, the individual link, of capacity R2, is provided to Receiver 2. We establish single-letter characterizations of the rate-distortion regions of both models in the discrete memoryless case.
机译:在这项工作中,我们研究了Heegard-Berger问题的两个实例。在两个设置中,编码器观察一对记忆,任意相关的源(S1N,S2N),并通过容量R的无差错速率有限链路与两个接收器通信。两个接收器都无损地再现源分量S2N;接收器1还将源分量S1N磁源分量S1N再现为在一些规定的保真级别D1中。此外,接收器1和接收器2分别用内部信息序列Y1N和Y2N配备。侧信息序列在它们之间任意相关,并且与源对(S1N,S2N)之间是相关的。另外,在连续改进型的第一设置中,编码器还通过附加无差错速率限制链路连接到接收器1。在重建可伸缩编码类型的第二设置中,提供给接收器2.在接收器2中提供容量R2的各个链路。我们在离散的无记忆壳体中建立两个模型的速率失真区域的单字母特性。

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